Area of research
Civil and Structural Engineering · Building and Construction
Research interest
Research topics from publications: A review of concrete properties under the combined effect of fatigue and corrosion from a material perspective; A review on aerodynamic load and dynamic behavior of railway noise barriers when high-speed trains pass; Effects of temperature on ion transport in C–A–S–H gel nanopores: insights from molecular dynamics simulations; Molecular dynamics study on structural characteristics and mechanical properties of sodium aluminosilicate hydrate with immobilized radioactive Cs and Sr ions; Experimental and explainable machine learning based investigation of the coal bottom ash replacement in sustainable concrete production; Predicting mechanical properties of sustainable green concrete using novel machine learning: Stacking and gene expression programming; The adsorption of two organic inhibitors on stainless steel passive film: A reactive force field study; A full-range fatigue life prediction model for RC beams strengthened with prestressed CFRP plates accounting for the impact of FRP debonding; The role of deep learning in reducing computational cost when simulating chloride ion attack on hydrated calcium silicate with molecular dynamics; New insights into the interfacial shear behavior of new-to-old concrete: A molecular dynamics simulation study. Representative work: When in use, reinforced concrete bridge structures not only experience high-frequency fatigue loading caused by passing vehicles, but also suffer from the effects of a corrosive environment. In addition to fatigue damage to reinforcement, long-term fatigue loading also causes concrete cracking and deterioration of pore structures, thereby accelerating the ingress of external corrosive substances and reducing concrete durability. Long-term exposure to a corrosive environment also reduces the performance of concrete and causes corrosion of reinforcement materials, affecting the fatigue performance of the structure. Therefore, there is a combined effect between fatigue loads and corrosion on co Noise barriers need to be installed along high-speed railway lines to protect nearby inhabitants from the noise pollution caused by the running of high-speed trains (HSTs). The vertical noise barrier is the main structural type. However, when an HST passes through the noise barriers sited along the track, significant and transient aerodynamic pressure will act on the surface
Experimental and explainable machine learning based investigation of the coal bottom ash replacement in sustainable concrete production
New insights into the interfacial shear behavior of new-to-old concrete: A molecular dynamics simulation study
Experimental investigation of coal bottom ash concrete mechanical properties and development of novel swarm optimized tree-based explainable models
Predicting mechanical properties of sustainable green concrete using novel machine learning: Stacking and gene expression programming
The role of deep learning in reducing computational cost when simulating chloride ion attack on hydrated calcium silicate with molecular dynamics
Reactive molecular dynamics of the fracture behavior in geopolymer: Crack angle effect
Compressive reactive molecular dynamics on mechanical and structural behaviors of geopolymers: Imposing lateral constraints and varied temperatures
Nanoscale insights into NASH under high-velocity fluids erosion: A molecular dynamics study
Investigation of the mechanical properties of C-S-H and α-Fe2O3/Fe3O4 interfaces: A reactive molecular dynamics study
A review of concrete properties under the combined effect of fatigue and corrosion from a material perspective
A review on aerodynamic load and dynamic behavior of railway noise barriers when high-speed trains pass
Molecular dynamics study on structural characteristics and mechanical properties of sodium aluminosilicate hydrate with immobilized radioactive Cs and Sr ions
A full-range fatigue life prediction model for RC beams strengthened with prestressed CFRP plates accounting for the impact of FRP debonding
Molecular dynamics simulations of ion migration and adsorption on the surfaces of AFm hydrates
Effects of temperature on ion transport in C–A–S–H gel nanopores: insights from molecular dynamics simulations
The adsorption of two organic inhibitors on stainless steel passive film: A reactive force field study
Molecular dynamics study on coupled ion transport in aluminium-doped cement-based materials: effect of concentration